Damus Branden Joshua, Amaeze Nzube Ruth, Yoo Eunsoo, Kaur Gagandeep
Department of Microbiology and Immunology, University of Miami, Coral Gables, FL 33146, USA.
Department of Chemistry, College of Arts and Sciences, Howard University, Washington, DC 20059, USA.
Polymers (Basel). 2024 Sep 29;16(19):2756. doi: 10.3390/polym16192756.
A novel class of pH-responsive polymers, acetalated dextran, has emerged in the field of biomaterials. These versatile materials are derived from dextran through a simple acetalation reaction, allowing for the creation of polymers with a tunable release profile which allows the controlled release of encapsulated therapeutics in response to acidic environments. Despite their recent introduction, acetalated dextran has rapidly garnered significant interest due to its potential for various therapeutic applications. This review delves specifically into the recent advancements of ethoxy acetalated dextran or Ace-DEX, a particular acetalated dextran with a distinct advantage: its degradation products (acetone and ethanol) are less toxic compared to other variants that produce methanol. The focus of this review is the diverse range of biomedical applications currently being explored for Ace-DEX-based scaffolds. Finally, this review concludes by addressing the existing challenges associated with Ace-DEX and outlining potential future research directions within this promising field.
一类新型的pH响应性聚合物——缩醛化葡聚糖,已在生物材料领域崭露头角。这些多功能材料是通过简单的缩醛化反应从葡聚糖衍生而来的,能够制备出具有可调释放曲线的聚合物,从而可以根据酸性环境控制包封治疗剂的释放。尽管缩醛化葡聚糖是最近才被引入的,但由于其在各种治疗应用中的潜力,已迅速引起了广泛关注。本综述特别深入探讨了乙氧基缩醛化葡聚糖(Ace-DEX)的最新进展,Ace-DEX是一种特殊的缩醛化葡聚糖,具有独特的优势:与产生甲醇的其他变体相比,其降解产物(丙酮和乙醇)的毒性较小。本综述的重点是目前正在探索的基于Ace-DEX的支架在生物医学领域的多种应用。最后,本综述通过阐述与Ace-DEX相关的现有挑战,并概述这一充满前景的领域未来潜在的研究方向来结束。